Research on Ground Directional Grouting Reinforcement Technology and Coupling Control of Fault Fracture Zone Through Rock Roadway
Abstract
:1. Introduction
2. Project Profile
2.1. General Geology
2.2. Technical Difficulties in Engineering
- (1)
- High difficulty of roadway formation: In the proposed control area, due to the influence of the fault fracture zone, the rock mass is broken, and it is difficult to form a roadway via direct excavation, and the subsequent maintenance is difficult.
- (2)
- Complex geological structure: Lianxiang needs to pass through the F2 fault and the Wugou fault, which have a large fault drop and a wide distribution of the fracture zone.
- (3)
- Difficulty of slurry diffusion: due to the influence of the fault fracture zone, the grouting slurry may run out of slurry, resulting in low grouting pressure that is unable to effectively reinforce the treatment area.
- (4)
- The excavated roadway is susceptible to grouting. Due to the close distance between the control area and the three uphill areas, it may cause adverse effects such as roof subsidence and floor heave.
3. Evolution Law of Surrounding Rock of Rock Roadway Crossing Fault Fracture Zone
3.1. Three-Dimensional Model Construction of Rock Roadway Crossing Fault Fracture Zone
3.2. Gradient Evolution Law of Stress Partition of Surrounding Rock in Fault-Crossing Rock Roadway
4. Ground Directional Pre-Grouting Reinforcement Technology
4.1. Advantages of Ground Directional Pre-Grouting Technology
4.2. Study on Similar Simulation Test of Pre-Grouting Reinforcement
4.3. Key Technical Processes
4.3.1. Directional Drilling
4.3.2. Grouting Hole Layout
4.3.3. Key Technology of Grouting
- (1)
- Slurry density selection: first, the slurry is used for trial injection to understand the size of the hole section grouting volume and the change in orifice pressure; then, the slurry concentration is adjusted.
- (2)
- Grouting pressure: Grouting pressure is the power source of grout diffusion in cracks, which should be adapted to the formation conditions, grout performance, and the required diffusion distance. When the grouting pressure is too small, the designed grouting diffusion distance cannot be achieved, and the grouting effect is poor. When the grouting pressure is too large, the diffusion distance is too large, resulting in unnecessary waste. Grouting adopts the grouting method of a ‘constant pressure variable’; that is, the fixed grouting pump volume is selected, and the slurry density is adjusted to make the actual grouting pressure ≥ the design grouting pressure, and the grouting pump volume is adjusted from large to small.
- (3)
- The criterion for the end of grouting: when the grouting pressure reaches 1.5 to 2.5 times the hydrostatic pressure, the pump volume is less than 60 L/min, and the stabilization time reaches 30 min, so the grouting process is completed.
- (4)
- Hole sealing: after the grouting of all branch holes, a single liquid cement slurry is used for grouting and sealing.
5. Control Technology of Surrounding Rock
6. Engineering Applications
6.1. Grouting Scheme
6.2. On-Site Implementation and Monitoring
7. Conclusions
- (1)
- Through the FLAC3D numerical simulation software, the model of a roadway crossing the fault fracture zone is constructed, and the stress evolution law of the surrounding rock of the roadway crossing the fault is explored. The three areas of the penetrating fault, which are located in the fault and penetrating fault zones, are analyzed emphatically, which provides a basis for roadway excavation and support.
- (2)
- The diffusion characteristics of the slurry under various grouting hole arrangements were explored using the COMSOL software, which provided a reference for the arrangement of grouting holes.
- (3)
- The ground directional pre-grouting reinforcement technology is proposed to effectively reinforce the fault fracture zone so that the roadway can be driven through the fault fracture zone quickly and safely. It enriches the technical means of roadway crossing faults and has important application value.
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Xie, F.; Zhang, Z.; He, W.; Chen, D. Research on Ground Directional Grouting Reinforcement Technology and Coupling Control of Fault Fracture Zone Through Rock Roadway. Appl. Sci. 2025, 15, 5647. https://doi.org/10.3390/app15105647
Xie F, Zhang Z, He W, Chen D. Research on Ground Directional Grouting Reinforcement Technology and Coupling Control of Fault Fracture Zone Through Rock Roadway. Applied Sciences. 2025; 15(10):5647. https://doi.org/10.3390/app15105647
Chicago/Turabian StyleXie, Fuxing, Zhixuan Zhang, Wen He, and Dongdong Chen. 2025. "Research on Ground Directional Grouting Reinforcement Technology and Coupling Control of Fault Fracture Zone Through Rock Roadway" Applied Sciences 15, no. 10: 5647. https://doi.org/10.3390/app15105647
APA StyleXie, F., Zhang, Z., He, W., & Chen, D. (2025). Research on Ground Directional Grouting Reinforcement Technology and Coupling Control of Fault Fracture Zone Through Rock Roadway. Applied Sciences, 15(10), 5647. https://doi.org/10.3390/app15105647